沙蜥精子对热的敏感性

Wayne Wen-Yeu Wang, Alex R. Gunderson, Natalie R. Page, Anthony M. Strickler, Alicia K. Kusaka
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摘要

繁殖的热敏感性是决定气候变化下种群持续性的关键因素。然而,相对于成体而言,配子的热敏感性却鲜为人知。我们开发了一种测量蜥蜴精子细胞耐热性的方法,并用这种方法测试了褐巨蜥(Anolis sagrei)精子细胞热生物学的几个方面。我们在21天内多次测量同一个体射出精子的耐热性和基线活力,从而估计精子性状的可重复性。为了研究精子和成体热特征的共同适应性,我们测试了精子耐热性与产生精子的成体耐热性之间的相关性。此外,我们还测试了雄性个体所经历的偶发性热应激对精子性能的影响。精子的耐热性和活力都是可重复的,这与进化潜力是一致的,但也有明显的证据表明环境对这些性状也有影响。与预期的热共同适应相反,我们发现精子和成体的耐热性之间没有相关性。成年雄性动物经历了一次偶发的极端高温事件后,精子的运动能力立即受损,这与成年热应激对储存精子的有害影响是一致的。我们的研究补充了越来越多的证据,表明精子对热敏感,容易受到全球变暖的影响,同时也表明配子水平的热适应具有进化潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The heat sensitivity of sperm in the lizard Anolis sagrei
The heat sensitivity of reproduction is a critical determinant of population persistence under climate change. However, the heat sensitivity of gametes is poorly known relative to adults. We developed a method to measure the heat tolerance of lizard sperm cells, and used the method to test several aspects of sperm cell thermal biology in the brown anole lizard (Anolis sagrei). We estimated the repeatability of sperm traits by measuring heat tolerance and baseline motility of ejaculated sperm from the same individuals multiple times over 21 days. To investigate co-adaptation of sperm and adult thermal traits, we tested for a correlation between sperm heat tolerance and the heat tolerance of adults that produced them. Furthermore, we tested for effects of episodic heat stress experienced by males on sperm performance. Sperm heat tolerance and motility were both repeatable, consistent with evolutionary potential, though there was clear evidence for environmental effects on these traits as well. Contrary to the expectation of thermal co-adaptation, we found no correlation between sperm and adult heat tolerance. A single, episodic extreme heat event experienced by adult males immediately impaired sperm motility, consistent with detrimental effects of adult heat stress on stored sperm. Our study adds to the mounting evidence that sperm are heat-sensitive and represent a vulnerability to global warming, but also suggest evolutionary potential for thermal adaptation at the gamete level.
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